Mao Ben, Yan Jun, Wei Yin, Shi Min
State Key Laboratory of Organometallic Chemistry, Center for Excellence in Molecular Synthesis, Shanghai Institute of Organic Chemistry, Chinese Academy of Sciences, 354 Fenglin Road, Shanghai 200032, P. R. China.
Key Laboratory for Advanced Materials and Institute of Fine Chemicals, East China University of Science and Technology, 130 MeiLong Road, Shanghai 200237, P. R. China.
Acc Chem Res. 2025 Jul 1;58(13):2028-2045. doi: 10.1021/acs.accounts.5c00228. Epub 2025 Jun 9.
ConspectusIn the past decade, visible-light-mediated photocatalysis has emerged as an applicable strategy for the generation of diverse radical species via single electron transfer (SET) and energy transfer (EnT) processes. Within this context, visible-light-mediated hydrogen atom transfer (HAT) has attracted major interest due to its mild and environmentally benign conditions applied in the selective activation of C-H bonds. Strategies employing C- and heteroatom-centered radical species to selectively activate C-H bonds have become versatile tools due to their mildness and good functional group compatibility for synthesizing value-added products. In this regard, a review on C-centered radical-promoted HAT processes was reported by Gevorgyan's group ( 2020, 11, 12974, DOI: 10.1039/d0sc04881j), and a review on visible-light-promoted remote C-H functionalization via 1,5-HAT was recently reported by Zhu's group ( 2021, 50, 7359, DOI: 10.1039/d0cs00774a). Compared to N- and O-centered radical-promoted HAT processes, C(sp)-centered radical-promoted HAT is more challenging and less explored due to the small differences in C-H bond dissociation energies. Additionally, in the realm of C-centered radical-promoted HAT, the generation of C-centered radicals has mostly involved SET processes, while the EnT-mediated C-centered radical-promoted HAT process has been less discussed because of the considerable scarcity of related reports.As a result of the rapid advancement of EnT catalysis in synthetic chemistry, C-C-centered biradical species can be readily generated from C═C double bonds via the EnT process using a photocatalyst under visible-light irradiation. An array of transformations (such as cycloaddition and isomerization) involving these C-C-centered biradical species have been reported. Our group recognized these C-C-centered biradicals as practical initiators of the HAT process in C-H functionalization reactions and devoted considerable effort to this field. Initially, we used a triplet excited allene moiety to realize remote sp C-H bond activation successfully. Later, a visible-light-induced triplet biradical HAT reaction of diarylethylenes was disclosed by our group. To further enhance its synthetic applicability, we applied simple styrene derivatives to realize such a novel EnT-mediated HAT process. Detailed control experiments combined with comprehensive density functional theory calculations elucidated the reaction mechanisms of these biradical-mediated HAT reactions along with the subsequent transformations of the obtained products.In addition to the advancements achieved in our group, Bach, Petersen, and others also reported such EnT-mediated HAT processes utilizing aryl acrylamide or aryl acrylate derivatives. Given the rapid progress over the past 5 years and the lack of focused discussion in this area, it is necessary to highlight these reports as a complement to the area of visible-light-mediated HAT via carbon-to-carbon processes. We anticipate that this Account will offer worthwhile insights and serve as guidance for future related research.
综述
在过去十年中,可见光介导的光催化已成为一种适用的策略,可通过单电子转移(SET)和能量转移(EnT)过程生成各种自由基物种。在此背景下,可见光介导的氢原子转移(HAT)因其在C-H键选择性活化中应用的温和且环境友好的条件而备受关注。采用以碳和杂原子为中心的自由基物种选择性活化C-H键的策略,由于其温和性和良好的官能团兼容性,已成为合成增值产品的通用工具。在这方面,Gevorgyan团队报道了一篇关于以碳为中心的自由基促进的HAT过程的综述(2020年,11卷,12974页,DOI:10.1039/d0sc04881j),最近Zhu团队报道了一篇关于通过1,5-HAT进行可见光促进的远程C-H官能化的综述(2021年,50卷,7359页,DOI:10.1039/d0cs00774a)。与以氮和氧为中心的自由基促进的HAT过程相比,以C(sp)为中心的自由基促进的HAT更具挑战性且研究较少,因为C-H键解离能的差异较小。此外,在以碳为中心的自由基促进的HAT领域,以碳为中心的自由基的生成大多涉及SET过程,而EnT介导的以碳为中心的自由基促进的HAT过程由于相关报道相当稀少而较少被讨论。
由于EnT催化在合成化学中的快速发展,在可见光照射下,使用光催化剂通过EnT过程可以很容易地从C═C双键生成一系列以C-C为中心的双自由基物种。已经报道了一系列涉及这些以C-C为中心的双自由基物种的转化反应(如环加成和异构化)。我们团队认识到这些以C-C为中心的双自由基是C-H官能化反应中HAT过程的实用引发剂,并在该领域投入了大量精力。最初,我们使用三线态激发的丙二烯部分成功实现了远程sp C-H键活化。后来,我们团队公开了二芳基乙烯的可见光诱导三线态双自由基HAT反应。为了进一步提高其合成适用性,我们应用简单的苯乙烯衍生物实现了这种新型的EnT介导的HAT过程。详细的对照实验结合全面的密度泛函理论计算阐明了这些双自由基介导的HAT反应的机理以及所得产物的后续转化。
除了我们团队取得的进展外,Bach、Petersen等人也报道了利用芳基丙烯酰胺或芳基丙烯酸酯衍生物的这种EnT介导的HAT过程。鉴于过去5年的快速进展以及该领域缺乏集中讨论,有必要突出这些报道,作为对通过碳-碳过程进行可见光介导的HAT领域的补充。我们预计本综述将提供有价值的见解,并为未来相关研究提供指导。